Organic-inorganic composite water-borne emulsion with fluorescent light emitting characteristic and preparation method thereof
A technology with luminescent properties and water-composite properties, applied in luminescent materials, chemical instruments and methods, etc., can solve the problems of excitation energy dissipation, application limitation and weakening of organic fluorescent small molecule materials, and overcome the aggregation-induced quenching effect and reaction. Simple, effective and controllable, expanding the effect of types and applications
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Embodiment 1
[0036] An organic-inorganic composite water-based latex with fluorescent properties, comprising:
[0037] Fluorescent organic montmorillonite, 1wt%;
[0038] Acrylate mixture, 60wt%;
[0039] Deionized water, 35wt%;
[0040] Initiator ammonium persulfate, 1wt%;
[0041] Emulsifier Sodium dodecyl sulfonate, 3wt%.
[0042] Among them, the acrylate mixture includes:
[0043] Methyl methacrylate, 20wt%;
[0044] Styrene, 20wt%;
[0045] Butyl acrylate, 30wt%;
[0046] Isooctyl acrylate, 25wt%;
[0047] Acrylic acid, 5 wt%.
[0048] Fluorescent organic montmorillonite was prepared by the following steps:
[0049] The first step: Weigh the sodium montmorillonite with a cation exchange capacity of 120mmol / 100g and a size of 300 mesh, use an ultrasonic disperser with a power range of 100W, and ultrasonically disperse at room temperature for 30 minutes to disperse it in water to form 1% Sodium montmorillonite suspension;
[0050] Step 2: Dissolve (E)-4,4'-(1,2-diphenyl-1,2-e...
Embodiment 2
[0056] An organic-inorganic composite water-based latex with fluorescent properties, comprising:
[0057] Fluorescent organic montmorillonite, 2.5wt%;
[0058] Acrylate mixture, 50wt%;
[0059] Deionized water, 42.4wt%;
[0060] Initiator ammonium persulfate, 0.6wt%;
[0061] Emulsifier sodium lauryl sulfonate, 4.5 wt%.
[0062] Among them, the acrylate mixture includes:
[0063] Methyl methacrylate, 40wt%;
[0064] Styrene, 10wt%;
[0065] Butyl acrylate, 19wt%;
[0066] Isooctyl acrylate, 30wt%;
[0067] Acrylic acid, 1 wt%.
[0068] Fluorescent organic montmorillonite was prepared by the following steps:
[0069] The first step: Weigh the sodium-based montmorillonite with a cation exchange capacity of 120mmol / 100g and a size of 400 mesh, use an ultrasonic disperser with a power range of 200W, and ultrasonically disperse at room temperature for 25 minutes to disperse it in water to form a 3% Sodium montmorillonite suspension;
[0070] Step 2: Dissolve (E)-4,4'-(1,2-...
Embodiment 3
[0076] An organic-inorganic composite water-based latex with fluorescent properties, comprising:
[0077] Fluorescent organic montmorillonite, 3.9wt%;
[0078] Acrylate mixture, 40wt%;
[0079] Deionized water, 55wt%;
[0080] Initiator ammonium persulfate, 0.1wt%;
[0081] Emulsifier sodium dodecyl sulfonate, 1 wt%.
[0082] Among them, the acrylate mixture includes:
[0083] Methyl methacrylate, 35wt%;
[0084] Styrene, 15% by weight;
[0085] Butyl acrylate, 10wt%;
[0086] Isooctyl acrylate, 27wt%;
[0087] Acrylic acid, 3 wt%.
[0088] Fluorescent organic montmorillonite was prepared by the following steps:
[0089] The first step: Weigh the sodium montmorillonite with a cation exchange capacity of 120mmol / 100g and a size of 500 mesh, use an ultrasonic disperser with a power range of 300W, and ultrasonically disperse at room temperature for 15 minutes to disperse it in water to form a 5% Sodium montmorillonite suspension;
[0090] Step 2: Dissolve (E)-4,4'-(1,2...
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